Determination of the characteristics and mechanical properties for soft materials based on plasticine and filia wax with inoculants

IF 1.4 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY AIMS Materials Science Pub Date : 2022-01-01 DOI:10.3934/matersci.2022020
M. Hawryluk, J. Marzec, Tatiana Karczewska, Łukasz Dudkiewicz
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Abstract

The article discusses the selected mechanical and plastic properties of modelling materials based on plasticine and filia wax utilized in the physical modelling. Application of the physical modelling with the utilize of soft model materials as well as plasticine and waxes with different inoculants, is a frequently used method applied as an alternative or verification of FE modelling of volumetric plastic working processes. First, in the ring test, the friction coefficients for the base model materials for various lubricants were determined. Then, in the compression test, the flow curves for model materials modified with various modifying substances (kaolin, lanolin, paraffin, chalk, etc.) were determined. The last step of the research studies was to verify the correctness of determining the flow curves using the inverse method. Based on the research carried out, a database was developed for soft model materials, covering the entire spectrum of flow curves and selected mechanical (friction coefficient, true and critical stress) and plastic properties (plastic deformation), which allows the selection of an appropriate mixture of model material to the real metallic material. Based on the obtained results, it can be concluded that both in the case of plasticine and filia wax, both of these materials together with modifiers very well simulate the behavior of warm and hot deformed metallic materials (with softening), much worse for materials with a clear hardening, characterizing cold work. In the case of filia wax, more stable properties were observed compared to plasticine-based materials.
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含孕育剂的塑料和蜡质软质材料的特性和机械性能的测定
本文讨论了在物理造型中选用的以橡皮泥和蜡为基础的造型材料的力学性能和塑性性能。利用软模型材料以及不同孕育剂的橡皮泥和蜡进行物理建模,是体积塑性加工过程有限元建模的一种常用替代或验证方法。首先,在环试验中,确定了各种润滑油基模材料的摩擦系数。然后,在压缩试验中,测定了不同改性物质(高岭土、羊毛脂、石蜡、白垩等)对模型材料进行改性后的流动曲线。研究的最后一步是验证用反求法确定流动曲线的正确性。基于所进行的研究,开发了一个软模型材料数据库,涵盖了整个流动曲线和选定的力学(摩擦系数、真应力和临界应力)和塑性性能(塑性变形),从而可以选择合适的模型材料混合到真实的金属材料中。根据得到的结果,可以得出结论,在橡皮泥和丝蜡的情况下,这两种材料与改性剂一起可以很好地模拟热变形和热变形金属材料的行为(具有软化),对于具有明显硬化的材料则更差,具有冷加工的特征。在filia蜡的情况下,与塑料基材料相比,观察到更稳定的性能。
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来源期刊
AIMS Materials Science
AIMS Materials Science MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.60
自引率
0.00%
发文量
33
审稿时长
4 weeks
期刊介绍: AIMS Materials Science welcomes, but not limited to, the papers from the following topics: · Biological materials · Ceramics · Composite materials · Magnetic materials · Medical implant materials · New properties of materials · Nanoscience and nanotechnology · Polymers · Thin films.
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